首页> 外文会议>Annual meeting of the Institute of Nuclear Materials Management >ULTRASONIC INTRINSIC TAGGING FOR UNIQUE ITEM IDENTIFICATION: PHASED ARRAY PROOF OF CONCEPT TO ENHANCE USER FRIENDLINESS
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ULTRASONIC INTRINSIC TAGGING FOR UNIQUE ITEM IDENTIFICATION: PHASED ARRAY PROOF OF CONCEPT TO ENHANCE USER FRIENDLINESS

机译:超声内在标记,用于唯一项标识:分阶段的概念证明概念,可增强用户友谊

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A robust, counterfeit-resistant, unique, and nonintrusive tag of a solid part is of interest to applications such as safeguards, arms control, and customs. A method able to obtain such a tag is ultrasonic imaging of material microstructure. A tag signature is obtained by (1) placement of an ultrasonic probe at a tag site on the part surface, (2) generation of an ultrasonic wave, and (3) imaging backscatter caused by the wave-microstructure interaction underneath the surface of the part. An initial signature is collected on an item and subsequent signature readings collected any time thereafter are then compared to the initial signature for validation. Because the material volume is from the part, the signature is intrinsic to the part like a fingerprint is to a person. Applicable materials include alloys, ceramics, and composites. Design of ultrasonic intrinsic tags (UIT) dates back to the 1980s when a mechanical scanner and focused ultrasonic probe (collectively called a reader) were used to acquire signatures. A limitation was the difficulty in holding the reader steady during signature acquisition. To address this, an ultrasonic phased-array (PA) transducer was evaluated. This was facilitated by advances in PA transducers for medical ultrasound and nondestructive evaluation of materials. As a proof-of-concept test, a commercially available PA transducer was used to acquire signatures from five stainless steel specimens and sort the specimens based solely on the UIT signatures. The PA configuration reduced signature acquisition to less than a second and enabled the reader to be a handheld device. Advantages of the PA reader over the mechanical reader include a 98% reduction of the signature acquisition time, an 88% reduction of the volume of the signature reader, and an 80% mass reduction of the signature reader. Furthermore, the PA contains no moving parts and is expected to essentially be maintenance-free as compared to the mechanical reader, which requires periodic adjustment. This paper will provide a description of the previous UIT design that used a mechanical reader, the new instrumentation used for the PA UIT system, specimens selected for signature evaluation, the PA UIT signature, performance test results, and anticipated PA development.
机译:坚固,坚固,防伪,独特且非侵入性的固体部件标签对于诸如防护,军备控制和海关等应用很感兴趣。能够获得这种标签的方法是材料微观结构的超声成像。通过以下方式获得标签签名:(1)将超声波探头放置在零件表面的标签位置上;(2)产生超声波;(3)成像由波表面下方的波微结构相互作用引起的反向散射。部分。将初始签名收集到一个项目上,然后将其后任何时候收集的后续签名读数与初始签名进行比较,以进行验证。因为材料来自零件,所以签名是零件固有的,就像指纹对人一样。适用的材料包括合金,陶瓷和复合材料。超声固有标签(UIT)的设计可以追溯到1980年代,当时使用机械扫描仪和聚焦超声探头(统称为阅读器)来获取签名。局限性在于难以在签名获取期间保持阅读器稳定。为了解决这个问题,对超声相控阵(PA)换能器进行了评估。用于医学超声和材料的无损评估的PA换能器的进步促进了这一点。作为概念验证测试,使用了市售的PA传感器从五个不锈钢样本中获取签名,并仅根据UIT签名对样本进行分类。 PA配置将签名获取减少到不到一秒钟,并使阅读器成为手持设备。 PA读取器相对于机械读取器的优势包括:签名获取时间减少了98%,签名阅读器的体积减少了88%,签名阅读器的质量减少了80%。此外,PA不包含活动部件,并且与需要定期调整的机械读取器相比,基本上不需要维护。本文将介绍以前使用机械阅读器的UIT设计,用于PA UIT系统的新仪器,选择用于签名评估的标本,PA UIT签名,性能测试结果以及预期的PA开发。

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